Active Public Health & Healthcare Digestion, Kidneys & Other Organs

Diagnostic and Antibiotic Stewardship for Urinary Tract Infections Using Fit-for-Purpose Diagnostic Tools

In plain English

AI plain-English summary

A urine sample in a rural clinic in Sub-Saharan Africa could soon deliver a diagnosis in minutes, not days, using a simple paper strip and a portable analyser. Urinary tract infections (UTIs) are common and deadly, but in Sub-Saharan Africa most clinics lack the tools to tell a bacterial infection from other causes. Without a clear diagnosis, antibiotics are prescribed blindly, fuelling antimicrobial resistance (AMR). This project builds a two-tier diagnostic system: a cheap lateral flow test for initial triage at primary care, and a compact point-of-care device for hospitals that detects bacterial DNA and host immune markers. Novel sampling cards eliminate the need for cold-chain transport, and a digital platform supports treatment decisions. If successful, the toolbox could cut unnecessary antibiotic use, slow the spread of resistant bacteria, and strengthen health systems against epidemics. The project also plans local manufacturing and supply-chain improvements, making the diagnostics sustainable beyond the grant period. By recruiting diverse patient groups across multiple African settings, the team aims to ensure the tools work for the populations that need them most.

View original technical description
Urinary Tract Infections (UTIs) and antimicrobial resistance (AMR) pose significant global health threats, characterised by high incidence and mortality. However, in Sub-Saharan Africa (SSA), there is often a lack of accessible diagnostics to guide proper treatment and therapy monitoring. Our objectives are as follows: (1) Develop and validate a two-tier diagnostic toolbox: (a) Implement a Lateral Flow Test (LFT) for detecting urinary biomarkers at primary care for triage; (b) Deploy a compact, portable Point-of-Care (POC) instrument for secondary care (hospitals, clinics), integrating pathogen detection via isothermal nucleic acid amplification and host-response biomarker quantification for evidence-based therapy and antibiotic prescription; (c) Introduce novel (self)-sampling cards for transport without the need for a cold chain; (d) Establish a digital health platform for clinical decision support. (2) Evaluate the toolbox's field deployability, acceptance, usability, and integration into clinical practice. (3) Maximise the adoption, implementation, and accessibility of the proposed diagnostic toolbox. (4) Prepare for post-project regulatory approval and market launch. (5) Enhance capacity building and surveillance structures through local manufacturing transfer and improvement of the supply chain and logistics. We will recruit diverse patient groups, including under-represented segments of society, from various African settings to ensure the broad applicability, sustainability, and customisability of our solutions. This project is expected to have a significant impact, improving the quality of UTI/AMR diagnostics, reducing unnecessary antibiotic use, preventing resistance, strengthening health systems and their response to epidemics, and increasing accessibility and quality of diagnostics through interdisciplinary and robust industrial collaboration.

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Related Research

Grants with similar aims, by meaning.

Accurate, Rapid, Robust and Economical diagnostic Solutions for UTI and drug resistance
NIHR Evolution Evaluating a novel UTI diagnostic for antiobiotic stewardship
Development of a rapid antimicrobial susceptibility test to assist the treatment of UTI in primary and urgent care settings.
TOUCAN - plaTform fOr Uti diagnostiC evAluatioN
Rapid, Multiplexed, Testing for Urinary Tract Infections

Original classification

EU-Funded

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